Electronic cigarette microphone detection mechanism
By designing an automated e-cigarette microphone detection mechanism, and using a turntable assembly and a detection camera to automatically detect the defects and height of the microphone, the problem of low manual inspection efficiency is solved, defective products are efficiently rejected, and the production efficiency and yield rate of e-cigarettes are improved.
Patent Information
- Application Number
- CN202422646672.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-31
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-10-31
AI Technical Summary
Existing electronic cigarette microphone detection mainly relies on manual inspection, which is inefficient, costly and prone to missed inspections, resulting in a low yield rate of electronic cigarette assembly.
An electronic cigarette microphone detection mechanism is designed, which includes a turntable assembly, a defect detection camera, and a height detection camera. It automatically detects the bottom defects and height of the microphone, removes defective products through an air blower, and arranges qualified microphones and transfers them to a transfer tray using a robotic arm.
The automation of microphone detection is realized, which improves detection efficiency, reduces production costs, ensures the efficient rejection of defective products, and improves the assembly yield of electronic cigarettes.
Smart Images

Figure CN223417761U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of electronic cigarettes, in particular to an electronic cigarette microphone detection mechanism. Background Art
[0002] The e-cigarette microphone, commonly known as the "mouthpiece" or "mouthpiece," is a crucial component of an e-cigarette. Before assembly, it must be inspected for defects and height. Currently, manual inspection is often used. However, manual inspection is inefficient, labor-intensive, and prone to missed inspections, resulting in a low yield rate for e-cigarette assembly. Utility Model Content
[0003] In response to the above problems, the utility model provides an electronic cigarette microphone head detection mechanism, which can automatically detect the bottom and height of the electronic cigarette microphone head, and can automatically reject defective microphone heads, collect materials and arrange them on the plate, thereby improving detection efficiency and reducing production costs.
[0004] The technical solution adopted by this utility model is:
[0005] An electronic cigarette microphone detection mechanism includes a workbench, on which a turntable assembly is provided. The turntable assembly includes a transparent turntable and a turntable driver for driving the turntable to rotate. A loading station, a defect detection station, a height detection station and a unloading station are formed around the transparent turntable on the workbench. The loading station corresponds to the microphone loading assembly, the unloading station corresponds to the microphone unloading assembly, the defect detection station corresponds to a defect detection assembly for detecting defects at the bottom of the electronic cigarette microphone, the defect detection assembly includes a defect detection camera arranged below the transparent turntable, the height detection station corresponds to a height detection assembly for detecting the height of the electronic cigarette microphone, and the height detection assembly includes a height detection camera arranged outside the transparent turntable and a detection light source arranged inside the transparent turntable.
[0006] Preferably, the turntable assembly also includes a connecting plate for supporting the transparent turntable, the transparent turntable is arranged on the mounting plate, the connecting plate is connected to the mounting plate and the turntable driver, the turntable driver is arranged under the workbench, and the workbench is also provided with a bearing for supporting the connecting plate.
[0007] Preferably, the microphone loading assembly includes a loading tray and a loading vibrator installed on the workbench. The loading vibrator is installed at the bottom of the loading tray. A loading channel is provided in the loading tray. The loading channel is divided into a receiving channel and a discharging channel connected to the receiving channel. The discharge port of the discharging channel is located above the transparent turntable.
[0008] Preferably, a defect detection rack is provided in the defect detection station, a defect detection seat is provided on the defect detection rack below the transparent turntable, and a defect detection camera is arranged in the defect detection seat.
[0009] Preferably, the transparent turntable is annular; a first height detection frame and a second height detection frame are provided in the height detection station, the height detection camera is arranged on the outside of the transparent turntable through the first height detection frame, and the detection light source is arranged in the inner circle hole of the transparent turntable through the second height detection frame.
[0010] Preferably, the workbench is also provided with a defective product receiving station, which is located between the height detection station and the unloading station. At least one defective product receiving component is provided in the defective product receiving station, and each defective product receiving component is arranged around the center of the transparent turntable. Each defective product receiving component includes a defective product receiving slot, an air blower for blowing defective products on the transparent turntable into the defective product receiving slot, and a receiving box below the defective product receiving slot; an air blowing mounting seat is provided on the receiving slot, and an air blowing channel connected to the air blower is provided in the air blowing mounting seat, and the air outlet of the air blowing channel is above the transparent turntable.
[0011] Preferably, the microphone unloading assembly includes a unloading tray docked with the transparent turntable and a unloading vibrator installed on the workbench, the unloading vibrator is installed at the bottom of the unloading tray, the feed port of the unloading tray is also provided with a guide plate for guiding the microphone on the transparent turntable into the unloading tray, and the guide plate is placed on the transparent turntable through a bracket; the unloading tray includes a unloading trough and a discharge area connected to the unloading trough, and a plurality of spacing ridges are provided in the discharge area, and adjacent spacing ridges form a microphone channel so that the microphones are arranged in rows.
[0012] Preferably, the workbench is also provided with a material picking and swinging plate assembly for swinging the microphones on the unloading tray after detection. The material picking and swinging plate assembly includes a docking seat docked with the rear end of the unloading tray for receiving the first row of microphones discharged from the unloading tray, a material transfer tray for receiving the microphones and a material picking robot for transferring the microphones to the material transfer tray; the material picking robot includes a transfer suction cup and a suction cup moving part for driving the transfer suction cup to move, and the negative pressure channel on the transfer suction cup is connected to a negative pressure cylinder; the material transfer tray is connected to a material transfer moving part for driving the transfer tray to move, and the material transfer tray is provided with at least one material receiving fixture for receiving the microphones.
[0013] More preferably, the docking seat is arranged on the docking frame, and the docking seat is flush with the unloading tray; a knife is provided between the docking seat and the tail end of the unloading tray, and a plurality of knife stop columns are provided on the knife, and the distance between two adjacent stop columns is consistent with the width of the microphone channel; a knife slide rail is also provided on the docking frame, and the knife slide rail cooperates with the knife slide, the knife is provided on the knife slide, and the knife slide is connected to the knife driver.
[0014] More preferably, the suction cup moving part includes a moving stand, on which is provided a transverse screw, a transverse slide cooperating with the transverse screw, a transverse driver connected to the transverse slide, a vertical slide rail arranged on the transverse slide, a vertical slide cooperating with the vertical slide rail, and a lifting driver for driving the vertical slide to rise and fall, and the transfer suction cup is arranged on the vertical slide; the material moving part includes a material moving screw arranged on the workbench, a material moving slide cooperating with the material moving screw, and a material moving driver for driving the material moving slide to move, and the material moving plate is arranged on the material moving slide.
[0015] Compared with the existing technology, the beneficial effects of the present invention are: the present invention provides an electronic cigarette microphone detection mechanism, which uses a detection camera to detect the bottom and height of the microphone, and can automatically remove the defective microphone after discovering the defective microphone, and blow the defective microphone into the defective product receiving slot. After the detection is completed, the unloaded microphones are arranged in a row and transferred to the material transfer tray for material placement, thereby improving detection efficiency and reducing production costs. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 Schematic diagram of an electronic cigarette microphone detection mechanism provided by the utility model Figure 1 .
[0017] Figure 2 Schematic diagram of an electronic cigarette microphone detection mechanism provided by the utility model Figure 2 .
[0018] Figure 3 This is a schematic diagram of a turntable assembly in an electronic cigarette microphone detection mechanism provided by the utility model.
[0019] Figure 4 This is a schematic diagram of a microphone loading component in an electronic cigarette microphone detection mechanism provided by the present invention.
[0020] Figure 5 This is a schematic diagram of a defect detection component and a height detection component in an electronic cigarette microphone detection mechanism provided by the utility model.
[0021] Figure 6 This is a schematic diagram of a microphone blanking component in an electronic cigarette microphone detection mechanism provided by the present invention.
[0022] Figure 7 This is a schematic diagram of a material picking and swinging plate assembly in an electronic cigarette microphone detection mechanism provided by the utility model.
[0023] Figure 8 This is an exploded view of the docking seat and the knife seat in the material picking and swinging plate assembly of the electronic cigarette microphone detection mechanism provided by the utility model.
[0024] Figure 9This is a schematic diagram of a manipulator in a material picking and swinging plate assembly of an electronic cigarette microphone detection mechanism provided by the present invention.
[0025] Figure 10 This is a schematic diagram of a swing plate in a material-taking swing plate assembly of an electronic cigarette microphone detection mechanism provided by the present invention. DETAILED DESCRIPTION
[0026] The preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings.
[0027] Figures 1 to 10 , is a preferred embodiment of an electronic cigarette microphone detection mechanism provided by the present invention. Figures 1 to 10 As shown, the electronic cigarette microphone detection mechanism includes a workbench 10, on which a turntable assembly 20 is provided. The turntable assembly 20 includes a transparent turntable 21 and a turntable driver 22 for driving the turntable to rotate. A loading station 101, a defect detection station 102, a height detection station 103 and a discharge station 105 are formed around the transparent turntable. The loading station 101 corresponds to the microphone loading assembly 30, the discharge station 105 corresponds to the microphone discharge assembly 40, the defect detection station 102 corresponds to a defect detection assembly 50 for detecting defects at the bottom of the electronic cigarette microphone, and the defect detection assembly 50 includes a defect detection camera 51 arranged below the transparent turntable. The height detection station 103 corresponds to a height detection assembly 60 for detecting the height of the electronic cigarette microphone, and the height detection assembly 60 includes a height detection camera 51 arranged outside the transparent turntable. The height detection camera 61 and the detection light source 62 are arranged on the inner side of the transparent turntable. The height detection camera 61 and the detection light source 62 are arranged on both sides of the transparent turntable 21 relative to each other. The microphone 100 is loaded onto the transparent turntable 21 from the microphone loading assembly 30. The transparent turntable 21 is rotated to the defect detection station 102 under the action of the turntable driver 22. The defect detection camera 51 takes pictures of the bottom of the microphone 100 for comparison. After taking pictures, the transparent turntable 21 rotates the microphone to the height detection station 103. The height detection camera 61 and the detection light source 62 are used to detect the height of the microphone 100. After the detection, the transparent turntable 21 rotates the microphone 100 to the unloading station 105 for unloading. The microphone that has completed the detection enters the microphone unloading assembly 40, thereby completing the bottom defect detection and height detection of the microphone 100, improving the detection efficiency and reducing the production cost. The defect detection camera 51, the height detection camera 61, and the turntable driver 22 are all connected to the main control module, which controls the activation of the defect detection camera 51, the height detection camera 61, and the turntable driver 22. The defect detection camera 51 and the height detection camera 61 are both CCD industrial cameras.
[0028] The turntable assembly 20 further includes a connecting plate 23 for supporting the transparent turntable 21. The transparent turntable 21 is disposed on a mounting plate 24. The connecting plate 23 is connected to the mounting plate 24 and the turntable driver 23. The turntable driver 22 is disposed below the workbench 10. The workbench 10 is further provided with a bearing 11 for supporting the connecting plate. This allows the turntable driver 22 to be hidden below the workbench 10, lowering the height of the transparent turntable 21 for easier viewing without affecting the rotation of the transparent turntable 21. The transparent turntable 21 is a glass turntable in an annular shape. The diameter of the mounting plate 24 is smaller than that of the transparent turntable 21. This way, the mounting plate 24 does not affect the detection of the microphone 100 on the transparent turntable 21. The use of the connecting plate 23 to support the transparent turntable 21 can protect the transparent turntable 21 and prevent wear on the transparent turntable 21.
[0029] The microphone loading assembly 30 includes a loading tray 31 and a loading vibrator 32 mounted on the workbench. The loading vibrator 32 is mounted at the bottom of the loading tray 31. A loading channel is provided within the loading tray 31. The loading channel is divided into a receiving channel 311 and a discharging channel 312 connected to the receiving channel. The discharging port of the discharging channel 312 is located above the transparent turntable 21. The microphones 100 first enter the receiving channel 311 and, under the action of the loading vibrator 32, are arranged one by one into the discharging channel 312 before falling onto the transparent turntable 21. The entrance of the receiving channel 311 is tapered to facilitate material loading. The width of the discharging channel 312 is approximately the same as the diameter of the microphones. As a result, the microphones 100 are arranged in a straight line under the action of the loading vibrator 32, enter the discharging channel 312, and then fall one by one onto the transparent turntable 21. The loading vibrator 32 is a linear vibrator and is mounted on the workbench 10 via a mounting bracket to avoid noise and reduce wear.
[0030] The defect detection station 102 is provided with a detection frame 52 , and the detection frame 52 is provided with a detection seat 53 below the transparent turntable 21 . The defect detection camera 51 is set in the detection seat 53 , so that the defect detection camera 51 is set below the transparent turntable 21 .
[0031] The transparent turntable 21 is annular and has an inner circle hole at its center. A first height detection frame 63 and a second height detection frame 64 are provided within the height detection station 103. A height detection camera 61 is mounted on the first height detection frame 63 and positioned outside the transparent turntable 21. A detection light source 62 is mounted on the second height detection frame 64 and positioned within the inner circle hole of the transparent turntable 21. Both the first height detection frame 63 and the second height detection frame 64 are mounted on the workbench 10 and positioned outside the transparent turntable 21.
[0032] The workbench 10 is further provided with a defective product receiving station 104, which is located between the height detection station 103 and the blanking station 105. When the probe 100 is detected as unqualified at the defect detection station 102 and / or the height detection station 103, the probe 100 is removed at the defective product receiving station 104, thereby improving the production efficiency. The defective product receiving station 104 is provided with at least one defective product receiving assembly 70, and each defective product receiving assembly 70 is arranged around the center of the transparent turntable 21. Each defective product receiving assembly 70 comprises a defective product receiving groove 71, a blower (not shown in the figure) for blowing the defective product on the transparent turntable 21 into the defective product receiving groove, and a receiving box 72 located below the defective product receiving groove. The defective product receiving groove is provided with a blower mounting seat 73, and the blower mounting seat 73 is provided with a blowing channel 731 in communication with the blower. The gas outlet of the blowing channel 731 is located above the transparent turntable 21. When the probe 100 that is detected as unqualified is rotated to the defective product receiving station 104, the blower is used to blow air into the blowing channel 731, so that the probe 100 that is detected as unqualified is blown into the defective product receiving groove 71 and falls into the receiving box 72. Each blower is connected to the main control module and is controlled by the main control module to start. The plurality of defective product receiving assemblies 70 arranged in the defective product receiving station 104 can ensure that the probe 100 that is detected as unqualified is removed.
[0033] The probe blanking assembly 40 comprises a blanking disc 41 connected to the transparent turntable and a blanking vibrator 42 mounted on the workbench. The blanking vibrator 42 is mounted at the bottom of the blanking disc 41. The blanking disc 41 is further provided with a guide plate 43 for guiding the probe on the transparent turntable into the blanking disc. The guide plate 43 is arranged on the transparent turntable 21 through a support. When the probe 100 that is detected as qualified is rotated to the blanking station 105, the probe 100 is guided into the blanking disc 41 under the action of the guide plate 43. The blanking vibrator 42 vibrates the blanking disc 41, so that the probe 100 is orderly moved.
[0034] The blanking disc 41 comprises a blanking groove 411 and a discharging area 412 in communication with the blanking groove. The discharging area 412 is provided with a plurality of interval ribs. Adjacent interval ribs form a probe channel 4121 for arranging the probes in a row. The probe 100 guided into the blanking disc 41 enters the discharging area 412 and then the probe channel 4121 under the action of the blanking vibrator 42, so that the plurality of probes are arranged in a plurality of rows.
[0035] The workbench 10 is also provided with a material taking and swinging plate assembly 80 for swinging the microphones on the blanking plate after detection. The material taking and swinging plate assembly 80 includes a docking seat 81 docked with the tail end of the blanking plate for receiving the first row of microphones discharged from the blanking plate, a transfer plate 82 for receiving the microphones and a material taking manipulator 83 for transferring the microphones to the transfer plate; the material taking manipulator 83 includes a transfer suction cup 831 and a suction cup moving part 832 for driving the transfer suction cup to move, and the negative pressure channel 8311 on the transfer suction cup 831 is connected to the negative pressure cylinder 833; the transfer plate 82 is used to receive the microphones and transfer the microphones to the transfer plate. The material tray 82 is connected to a material transfer driving member 84 for driving the material transfer tray to move, and the material transfer tray 82 is provided with at least one material receiving fixture 821 for receiving the microphone; in this way, the microphones at the first position in each row of microphones arranged in a row in the unloading tray 41 enter the docking seat 81 to form a row of microphones, and the transfer suction cup 831 in the material picking robot 83 generates negative pressure under the action of the negative pressure cylinder 833, which adsorbs the row of microphones on the bottom of the transfer suction cup 831 and moves them to the material receiving fixture 821 of the material transfer tray 82 through the suction cup moving member 832, which facilitates subsequent processes.
[0036] The docking seat 81 is arranged on the docking frame 811, and the docking seat 81 is flush with the blanking tray 41. A knife 812 is arranged between the docking seat 81 and the tail end of the blanking tray 41, and a plurality of knife blocking posts 8121 are arranged on the knife 812. The distance between two adjacent knife blocking posts 8121 is consistent with the width of the microphone channel 4121; the docking frame 811 is also provided with a knife slide 813, and the knife slide 813 cooperates with the knife slide 814. The knife 812 is arranged on the knife slide 814, and the knife slide 814 is connected to the knife driver 815. In this way, at the beginning, each blocking post 8121 is aligned with the inner spacer edge of the blanking tray 41. When the first microphone in each microphone channel 4121 in the unloading tray 41 enters the docking seat 81, the knife driver 815 drives the knife slide 814 to move along the knife rail 813, driving the knife 812 to move. The stop post 8121 on the knife 812 moves longitudinally, pushing the first microphone in each microphone row to move, so that the first microphone fully enters the docking seat 81 and blocks the movement of the microphones in the rear position in each microphone channel 4121. This facilitates the transfer suction cup 831 to absorb the row of microphones on the docking seat 81. The docking seat 81 is provided with spacing stop posts 8101 corresponding to the spacing edges in the unloading tray 41. The docking channel formed between two adjacent spacing stop posts 8101 corresponds to the microphone channel 4121. The knife stop post 8121 on the knife 812 can push the microphone 100 to move forward from the docking channel, so that the microphone 100 is fully positioned on the docking seat 81.
[0037] The suction cup moving member 832 includes a moving frame 8321, which is equipped with a transverse screw 8322, a transverse slide 8323 that cooperates with the transverse screw, a transverse driver 8324 connected to the transverse slide, a vertical slide 8325 disposed on the transverse slide, a vertical slide 8326 that cooperates with the vertical slide, and a lift driver 8327 for driving the vertical slide up and down. The transfer suction cup 831 is disposed on the vertical slide 8326. The transverse driver 8324 and lift driver 8327 are used to drive the transfer suction cup 831 to move in the X and Z directions. The transverse driver 8324 is a motor, and the lift driver 8327 is a lift cylinder.
[0038] The material moving member 84 includes a material moving screw 841 disposed on a workbench, a material moving slide 842 cooperating with the material moving screw 841, and a material moving driver 843 for driving the material moving slide. The material moving tray 82 is disposed on the material moving slide 842. The material moving driver 843 drives the material moving slide 842 to move the material moving tray 82 in the Y direction. The material moving driver 843 is a motor.
[0039] The specific detection process of the electronic cigarette microphone detection mechanism is as follows: (1) At the loading station 101, a large number of microphones 100 enter the receiving channel 311, and are arranged one by one into the discharging channel 312 under the action of the loading vibrator 32, and fall one by one onto the transparent turntable 21: (2) Under the action of the turntable driver 23, the microphones 100 on the transparent turntable 21 are driven to rotate to the defect detection station 102, and the defect detection camera 51 is at the bottom of the transparent turntable 21, and takes pictures of the bottom of the microphones 100, and sends The height of the microphone 100 is detected by the transparent turntable 21 and sent to the main control module for comparison; (3) After the defect detection is completed, the microphone 100 on the transparent turntable 21 rotates to the height detection station 103, and the height detection camera 61 and the detection light source 62 detect the height of the microphone 100 and send it to the main control module; (4) After the height detection is completed, the microphone 100 on the transparent turntable 21 rotates to the defective product receiving station 104. If the main control module determines that the detected microphone 100 is a defective product based on the bottom detection and height detection, the blower is started and the blower is used to blow the defective product to the bottom of the microphone 100. Air is blown through the air channel 731, and the unqualified microphones 100 are blown into the defective product receiving slot 71 and fall into the receiving box 72; (5) After the defective products are removed, the qualified microphones 100 on the transparent turntable 21 are rotated to the unloading station 105, and under the action of the guide plate 43, the microphones 100 are guided into the unloading tray 41. Under the action of the unloading vibrator 42, the microphones 100 are divided into several rows and arranged in the microphone channels 4121 of the unloading tray 41; (6) The first microphone channel 4121 is The microphone 100 in the position is moved. As the knife driver 815 drives the knife 812 to move, the blocking column 8121 on the knife 812 moves horizontally, pushing the first microphone of each microphone channel 4121 to move completely into the docking seat 81, forming a row of microphones; (7) The transfer suction cup 831 in the material picking robot 83 generates negative pressure under the action of the cylinder 833, and adsorbs a row of microphones on the bottom of the transfer suction cup 831, and moves them to the material receiving fixture 821 of the material transfer tray 82 through the suction cup moving part 832.
[0040] The utility model provides an electronic cigarette microphone detection mechanism, which uses a detection camera to detect the bottom and height of the microphone, and can automatically remove the defective microphone after discovering the defective microphone, and blow the defective microphone into the defective product receiving slot. After the detection is completed, the unloaded microphones are arranged in a row and transferred to the material transfer tray for material placement, thereby improving detection efficiency and reducing production costs.
Claims
1. An electronic cigarette microphone detection mechanism, comprising a workbench, a turntable assembly being provided on the workbench, characterized in that: The turntable assembly includes a transparent turntable and a turntable driver for driving the turntable to rotate. A loading station, a defect detection station, a height detection station and an unloading station are formed around the transparent turntable on the workbench. The loading station corresponds to a microphone loading assembly, the unloading station corresponds to a microphone unloading assembly, the defect detection station corresponds to a defect detection assembly for detecting defects at the bottom of the electronic cigarette microphone, the defect detection assembly includes a defect detection camera arranged under the transparent turntable, the height detection station corresponds to a height detection assembly for detecting the height of the electronic cigarette microphone, and the height detection assembly includes a height detection camera arranged on the outside of the transparent turntable and a detection light source arranged on the inside of the transparent turntable.
2. The electronic cigarette microphone detection mechanism according to claim 1, characterized in that: The turntable assembly also includes a connecting plate for supporting the transparent turntable. The transparent turntable is arranged on the mounting plate. The connecting plate is connected to the mounting plate and the turntable driver. The turntable driver is arranged under the workbench. The workbench is also provided with a bearing for supporting the connecting plate.
3. The electronic cigarette microphone detection mechanism according to claim 1, characterized in that: The microphone loading assembly includes a loading tray and a loading vibrator installed on a workbench. The loading vibrator is installed at the bottom of the loading tray. A loading channel is provided in the loading tray. The loading channel is divided into a receiving channel and a discharging channel connected to the receiving channel. The discharge port of the discharging channel is located above the transparent turntable.
4. The electronic cigarette microphone detection mechanism according to claim 1, characterized in that: A defect detection rack is provided in the defect detection station, a defect detection seat is provided on the defect detection rack and is located below the transparent turntable, and a defect detection camera is arranged in the defect detection seat.
5. The electronic cigarette microphone detection mechanism according to claim 1, characterized in that: The transparent turntable is annular; a first height detection frame and a second height detection frame are provided in the height detection station; the height detection camera is arranged on the outside of the transparent turntable through the first height detection frame, and the detection light source is arranged in the inner circle hole of the transparent turntable through the second height detection frame.
6. The electronic cigarette microphone detection mechanism according to claim 1, characterized in that: The workbench is also provided with a defective product receiving station, which is located between the height detection station and the unloading station. At least one defective product receiving component is provided in the defective product receiving station, and each defective product receiving component is arranged around the center of the transparent turntable. Each defective product receiving component includes a defective product receiving slot, an air blower for blowing defective products on the transparent turntable into the defective product receiving slot, and a receiving box below the defective product receiving slot; an air blowing mounting seat is provided on the receiving slot, and an air blowing channel connected to the air blower is provided in the air blowing mounting seat, and the air outlet of the air blowing channel is located above the transparent turntable.
7. The electronic cigarette microphone detection mechanism according to claim 1, characterized in that: The microphone unloading assembly includes a unloading tray docked with the transparent turntable and a unloading vibrator installed on the workbench. The unloading vibrator is installed at the bottom of the unloading tray. The feed port of the unloading tray is also provided with a guide plate for guiding the microphones on the transparent turntable into the unloading tray. The guide plate is placed on the transparent turntable through a bracket. The unloading tray includes a unloading trough and a discharge area connected to the unloading trough. A plurality of spacing ridges are provided in the discharge area. Adjacent spacing ridges form a microphone channel so that the microphones are arranged in rows.
8. The electronic cigarette microphone detection mechanism according to claim 7, characterized in that: The workbench is also provided with a material picking and swinging plate assembly for swinging the microphones on the unloading tray after detection. The material picking and swinging plate assembly includes a docking seat docked with the rear end of the unloading tray for receiving the first row of microphones discharged from the unloading tray, a material transfer tray for receiving the microphones and a material picking robot for transferring the microphones to the material transfer tray; the material picking robot includes a transfer suction cup and a suction cup moving part for driving the transfer suction cup to move, and the negative pressure channel on the transfer suction cup is connected to a negative pressure cylinder; the material transfer tray is connected to a material transfer moving part for driving the material transfer tray to move, and the material transfer tray is provided with at least one material receiving fixture for receiving the microphones.
9. The electronic cigarette microphone detection mechanism according to claim 8, characterized in that: The docking seat is arranged on the docking frame, and the docking seat is flush with the unloading disc; a knife is provided between the docking seat and the tail end of the unloading disc, and a plurality of knife stop columns are provided on the knife, and the distance between two adjacent stop columns is consistent with the width of the microphone channel; a knife slide rail is also provided on the docking frame, and the knife slide rail cooperates with the knife slide seat, the knife is provided on the knife slide seat, and the knife slide seat is connected to the knife driver.
10. The electronic cigarette microphone detection mechanism according to claim 8, characterized in that: The suction cup moving part includes a moving stand, on which is provided a transverse screw, a transverse slide cooperating with the transverse screw, a transverse driver connected to the transverse slide, a vertical slide rail arranged on the transverse slide, a vertical slide cooperating with the vertical slide rail, and a lifting driver for driving the vertical slide to rise and fall, and the transfer suction cup is arranged on the vertical slide; the material moving part includes a material moving screw arranged on the workbench, a material moving slide cooperating with the material moving screw, and a material moving driver for driving the material moving slide to move, and the material moving plate is arranged on the material moving slide.